论文标题

DFRC系统中的联合波束形成设计,用于宽带传感和OFDM通信

Joint Beamforming Design in DFRC Systems for Wideband Sensing and OFDM Communications

论文作者

Xiao, Zichao, Liu, Rang, Li, Ming, Liu, Yang, Liu, Qian

论文摘要

双重功能雷达通信(DFRC)系统可以通过使用一种共同的波形进行感应和通信(S&C),可以有效地利用拥挤的光谱和昂贵的硬件资源(S&C),引起了人们的关注越来越多。虽然已广泛采用正交频道多路复用(OFDM)技术来支持高质量的通信,但它也具有改善雷达传感性能并提供灵活的S&C的巨大潜力。在本文中,我们建议共同设计占据多个子载波的双功能传输信号,以实现多用户通信,并在存在混乱的情况下检测一个移动目标。同时,可以以类似的方式优化其他频率子载波中的信号以执行其他任务。共同优化发射光束成形和接收过滤器,以最大程度地提高雷达输出信号与互联级比率(SINR),同时满足通信SINR要求和功率预算。开发了基于多数化最小化(MM)方法算法来解决所得的非凸优化问题。数值结果揭示了通过共同设计不同子载波的传输信号带来的显着宽带传感增益,并证明了我们所提出的方案的优势以及发达算法的有效性。

Dual-function radar-communication (DFRC) systems, which can efficiently utilize the congested spectrum and costly hardware resources by employing one common waveform for both sensing and communication (S&C), have attracted increasing attention. While the orthogonal frequency division multiplexing (OFDM) technique has been widely adopted to support high-quality communications, it also has great potentials of improving radar sensing performance and providing flexible S&C. In this paper, we propose to jointly design the dual-functional transmit signals occupying several subcarriers to realize multi-user OFDM communications and detect one moving target in the presence of clutter. Meanwhile, the signals in other frequency subcarriers can be optimized in a similar way to perform other tasks. The transmit beamforming and receive filter are jointly optimized to maximize the radar output signal-to-interference-plus-noise ratio (SINR), while satisfying the communication SINR requirement and the power budget. An majorization minimization (MM) method based algorithm is developed to solve the resulting non-convex optimization problem. Numerical results reveal the significant wideband sensing gain brought by jointly designing the transmit signals in different subcarriers, and demonstrate the advantages of our proposed scheme and the effectiveness of the developed algorithm.

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